Khudyakov Ivan Y, Golden James W
Department of Biology, Texas A&M University, 3258 TAMU, College Station, TX 77843-3258, USA.
Proc Natl Acad Sci U S A. 2004 Nov 9;101(45):16040-5. doi: 10.1073/pnas.0405572101. Epub 2004 Nov 1.
The HetR protein has long been recognized as a key player in the regulation of heterocyst development. HetR is known to possess autoproteolytic and DNA-binding activities. During a search for mutants of Anabaena sp. PCC 7120 that can overcome heterocyst suppression caused by overexpression of the patS gene, which encodes a negative regulator of differentiation, a bypass mutant strain, S2-45, was isolated that produced a defective pattern (Pat phenotype) of irregularly spaced single and multiple contiguous heterocysts (Mch phenotype) in combined nitrogen-free medium. Analysis of the S2-45 mutant revealed a R223W mutation in HetR, and reconstruction in the wild-type background showed that this mutation was responsible for the Mch phenotype and resistance not only to overexpressed patS, but also to overexpressed hetN, another negative regulator of differentiation. Ectopic overexpression of the hetRR223W allele in the hetRR223W background resulted in a conditionally lethal (complete differentiation) phenotype. Analysis of the heterocyst pattern in the hetRR223W mutant revealed that heterocysts differentiate essentially randomly along filaments, indicating that this mutation results in an active protein that is insensitive to the major signals governing heterocyst pattern formation. These data provide genetic evidence that, apart from being an essential activator of differentiation, HetR plays a central role in the signaling pathway that controls the heterocyst pattern.
长期以来,HetR蛋白一直被认为是异形胞发育调控中的关键因子。已知HetR具有自蛋白水解和DNA结合活性。在对鱼腥藻PCC 7120的突变体进行筛选时,该突变体能够克服由编码分化负调控因子的patS基因过表达所导致的异形胞抑制现象,分离得到了一个旁路突变株S2-45,该突变株在无氮培养基中产生了不规则间隔的单个和多个连续异形胞的缺陷模式(Pat表型)以及多个连续异形胞的缺陷模式(Mch表型)。对S2-45突变体的分析揭示了HetR中的R223W突变,在野生型背景下的重建表明,该突变不仅导致了Mch表型以及对过表达的patS的抗性,还导致了对另一个分化负调控因子hetN过表达的抗性。hetRR223W等位基因在hetRR223W背景中的异位过表达导致了一种条件致死(完全分化)表型。对hetRR223W突变体中异形胞模式的分析表明,异形胞基本上沿着丝状体随机分化,这表明该突变导致了一种对控制异形胞模式形成的主要信号不敏感的活性蛋白。这些数据提供了遗传学证据,表明HetR除了是分化所必需的激活因子外,在控制异形胞模式的信号通路中也起着核心作用。